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Strain Capacities Limits of Wrought Magnesium Alloys: Tension vs. Expansion

机译:变形镁合金的应变能力极限:拉伸与膨胀

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Lightening structure is one of the goals of many fields of research. As a result, magnesium alloys are studied due to their low density. However, one drawback of these alloys is their low formability at room temperature due to their hexagonal closed-packed structure. In the present work, the forming capacity of an AZ31 Mg alloys has been studied using a mini deep-drawing device, image correlation techniques and tests (tension and expansion) at temperatures contained between 20°C and 200°C. To investigate formability limits of Mg alloys in expansion, major and minor strains data were generated using hemispherical punch tests and analyzed with 3D digital images correlation techniques. Thanks to images correlation, strains on the surface of the samples were observed by means of a double digitization of the sample in three dimensions before and after deformation by using stereoscopic vision and triangulation. Image correlations have also been used in 2D to measure strains on the surface of the tensile test samples. These tests gave interesting information on the evolution of various parameters such as hardening coefficient, strain rate sensitivity parameter, and Lankford coefficient, which may affect the behavior of the alloys. Finally, the forming limits in both configurations (tension and expansion) were compared and discussed.
机译:减轻结构负担是许多研究领域的目标之一。结果,由于镁合金的低密度而被研究。然而,这些合金的一个缺点是由于它们的六方密堆积结构,它们在室温下的可成形性低。在目前的工作中,已经使用微型深冲装置,图像相关技术和在20°C至200°C的温度下进行测试(拉伸和膨胀)研究了AZ31 Mg合金的成形能力。为了研究镁合金在膨胀过程中的可成形性极限,使用半球形冲压试验生成了主要和次要应变数据,并使用3D数字图像相关技术进行了分析。由于图像的相关性,通过使用立体视觉和三角剖分在变形之前和之后在三个维度上对样品进行了三维双重数字化,可以观察到样品表面的应变。图像相关性也已用于2D中,以测量拉伸测试样品表面上的应变。这些测试提供了有关各种参数演变的有趣信息,例如硬化系数,应变速率敏感性参数和兰克福德系数,这些参数可能会影响合金的性能。最后,对两种构型(拉伸和膨胀)的成形极限进行了比较和讨论。

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